Vibration analysis of a thin cylindrical shell

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dc.contributor.author Bari, Md. Muhiminul
dc.contributor.author Enam, H.M. Khairul
dc.date.accessioned 2021-09-08T09:28:07Z
dc.date.available 2021-09-08T09:28:07Z
dc.date.issued 2013-11-15
dc.identifier.citation [1].A. W. Leissa, Vibrarion of Shells. NASA SP-288 (1973). [2].H. Chung, A general method of solution for vibrations of cylindrical shells. Ph.D. thesis, Tufts University (1974). [3]R. Grief and H. Chung, Vibration of constrained cylindrical shells. AIAA Jnl 13, 1190-I 198 (1975). [4]C. B. Sharma and D. J. Johns, Free vibration of cantilever circular shells. Sound Vibr. 25, 433449 (1972). [5] C. B. Sharma, Calculation of natural frequencies of fixed-free circular cylindrical shells. 35, 55-76 (1974). [6] R. L. Goldman, Mode shapes and frequencies of clamped-clamped cylindrical shells. AIAA Jnl 12, 1755-1756 (1974) [7] H. Chung, Free vibration analysis of circular cylindrical shells. J. Sound Vibr. 74, 331-350 (1981). [8] Y. Mnev and A. Pertsev, Hydro elasticity of shells. Wriaht-Patterson Air Force Base Report FTD-MT-24-119% (1971). [9] M. C. Junger and D. Feit, Sound, Structures and Their Interaction. MIT Press. Cambridue. MA (1972). [10] S. J. Brown, A survey of studies into the hydrodynamic response of fluid-coupled circular cylinders. ASME J. Press. Vess. Technol. 104, 2-19 (1982). [11] K. K. T. Chu, M. Pappas and H. Herman, Dynamics of submerged cylindrical shells with eccentric stiffening. AIAA Jnl 18, 834-840 (1980). [12] P. B. Goncalves, Non-linear dynamic interaction between fluid and thin shells. Ph.D. dissertation, Coppe-Federal University of Rio De Janeiro (1987) en_US
dc.identifier.uri http://hdl.handle.net/123456789/897
dc.description Supervised by Dr. Md. Zahid Hossain Dr. Mir Md. Maruf Morshed Department of Mechanical and Chemical Engineering (MCE), Islamic University of Technology (IUT), Board Bazar, Gazipur-1704, Bangladesh. en_US
dc.description.abstract In this paper, vibration characteristics of thin cylindrical shell are investigated by using & ANSYS WORKBENCH 14.0. Vibration response are investigated by Transient Structural analysis for the simply supported boundary conditions. It is also necessary to investigate the characteristics considering fluid-structure interaction (FSI) effect by System Coupling between Transient structural and Fluent flow. In this study, theoretical background and several finite element models are developed for cylindrical shells with fluid-filled annulus considering fluid-structure interaction. The effect of the inclusion of the fluid-filled annulus on the natural frequencies is investigated, which frequencies are used for typical dynamic analyses the equations of motion of the structure for the theoretical analysis are obtained from Love’s equation. en_US
dc.language.iso en en_US
dc.publisher Department of Mechanical and Production Engineering (MPE),Islamic University of Technology(IUT), Board Bazar, Gazipur, Bangladesh en_US
dc.title Vibration analysis of a thin cylindrical shell en_US
dc.type Thesis en_US


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